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具有可灌注血管系统的高功能生物工程化人肝脏的开发。

Development of highly functional bioengineered human liver with perfusable vasculature.

作者信息

Kim Da-Hyun, Ahn Jungho, Kang Hyun Kyoung, Kim Min-Soo, Kim Nam-Gyo, Kook Myung Geun, Choi Soon Won, Jeon Noo Li, Woo Heung-Myong, Kang Kyung-Sun

机构信息

Adult Stem Cell Research Center and Research Institute for Veterinary Medicine, College of Veterinary Medicine, Seoul National University, Seoul, Republic of Korea.

School of Mechanical Aerospace Engineering, Seoul National University, Seoul, Republic of Korea.

出版信息

Biomaterials. 2021 Jan;265:120417. doi: 10.1016/j.biomaterials.2020.120417. Epub 2020 Sep 21.

Abstract

Liver tissue engineering offers a promising strategy for liver failure patients. Since transplantation rejection resulting in vessel thrombosis is regarded as a major hurdle, vascular reconstruction is one of indispensable requirements of whole organ engineering. Here we demonstrated a novel strategy for reconstruction of a vascularized bioengineered human liver (VBHL) using decellularized liver scaffolds in an efficient manner. First we achieved fully functional endothelial coverage of scaffolds by adopting the anti-CD31 aptamer as a potent coating agent for re-endothelialization. Through an ex vivo human blood perfusion that recapitulates the blood coagulation response in humans, we demonstrated significantly reduced platelet aggregation in anti-CD31 aptamer coated scaffolds. We then produced VBHL constructs using liver parenchymal cells and nonparenchymal cells, properly organized into liver-like structures with an aligned vasculature. Interestingly, VBHL constructs displayed prominently enhanced long-term liver-specific functions that are affected by vascular functionality. The VBHL constructs formed perfusable vessel networks in vivo as evidenced by the direct vascular connection between the VBHL constructs and the renal circulation. Furthermore, heterotopic transplantation of VBHL constructs supported liver functions in a rat model of liver fibrosis. Overall, we proposed a new strategy to generate transplantable bioengineered livers characterized by highly functional vascular reconstruction.

摘要

肝组织工程为肝衰竭患者提供了一种很有前景的策略。由于导致血管血栓形成的移植排斥反应被视为一个主要障碍,血管重建是全器官工程不可或缺的要求之一。在此,我们展示了一种利用去细胞化肝脏支架高效重建血管化生物工程人肝脏(VBHL)的新策略。首先,我们通过采用抗CD31适配体作为有效的再内皮化包被剂,实现了支架的全功能内皮覆盖。通过模拟人体凝血反应的体外人体血液灌注,我们证明了抗CD31适配体包被的支架中血小板聚集显著减少。然后,我们使用肝实质细胞和非实质细胞制作了VBHL构建体,这些细胞被恰当地组织成具有排列整齐的脉管系统的肝样结构。有趣的是,VBHL构建体显示出受血管功能影响的显著增强的长期肝脏特异性功能。VBHL构建体在体内形成了可灌注的血管网络,VBHL构建体与肾循环之间的直接血管连接证明了这一点。此外,VBHL构建体的异位移植在肝纤维化大鼠模型中支持了肝脏功能。总体而言,我们提出了一种生成具有高功能血管重建特征的可移植生物工程肝脏的新策略。

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